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肠道脂肪酸结合蛋白中螺旋基序的缺失减少了其与膜单层的相互作用:布儒斯特角显微镜、红外反射吸收光谱和表面压力研究。

Deletion of the helical motif in the intestinal fatty acid-binding protein reduces its interactions with membrane monolayers: Brewster angle microscopy, IR reflection-absorption spectroscopy, and surface pressure studies.

作者信息

Wu F, Corsico B, Flach C R, Cistola D P, Storch J, Mendelsohn R

机构信息

Department of Chemistry, Newark College of Arts and Science, Rutgers University 73 Warren Street, Newark New Jersey 07102, USA.

出版信息

Biochemistry. 2001 Feb 20;40(7):1976-83. doi: 10.1021/bi002252i.

Abstract

Intestinal fatty acid binding protein (IFABP) appears to interact directly with membranes during fatty acid transfer [Hsu, K. T., and Storch, J. (1996) J. Biol. Chem. 271, 13317-13323]. The largely alpha-helical "portal" domain of IFABP was critical for these protein--membrane interactions. In the present studies, the binding of IFABP and a helixless variant of IFABP (IFABP-HL) to acidic monolayers of 1,2-dimyristoylphosphatidic acid (DMPA) has been monitored by surface pressure measurements, Brewster angle microscopy (BAM), and infrared reflection-absorption spectroscopy (IRRAS). Protein adsorption to DMPA exhibited a two phase kinetic process consisting of an initial slow phase, arising from protein binding to the monolayer and/or direct interfacial adsorption, and a more rapid phase that parallels formation of lipid-containing domains. IFABP exhibited more rapid changes in both phases than IFABP-HL. The second phase was absent when IFABP interacted with zwitterionic monolayers of 1,2-dipalmitoylphosphatidylcholine, revealing the important role of electrostatics at this stage. BAM images of DMPA monolayers with either protein revealed the formation of domains leading eventually to rigid films. Domains of DMPA/IFABP-HL formed more slowly and were less rigid than with the wild-type protein. Overall, the IRRAS studies revealed a protein-induced conformational ordering of the lipid acyl chains with a substantially stronger ordering effect induced by IFABP. The physical measurements thus suggested differing degrees of direct interaction between the proteins and DMPA monolayers with the IFABP/DMPA interaction being somewhat stronger. These data provide a molecular structure rationale for previous kinetic measurements indicating that the helical domain is essential for a collision-based mechanism of fatty acid transfer to phospholipid membranes [Corsico, B., Cistola, D. P., Frieden, C. and Storch, J. (1998) Proc. Natl. Acad. Sci. U.S.A. 95, 12174-12178].

摘要

肠脂肪酸结合蛋白(IFABP)在脂肪酸转运过程中似乎直接与膜相互作用[许,K.T.,和斯托奇,J.(1996年)《生物化学杂志》271,13317 - 13323]。IFABP主要由α螺旋构成的“门户”结构域对这些蛋白质与膜的相互作用至关重要。在本研究中,通过表面压力测量、布鲁斯特角显微镜(BAM)和红外反射吸收光谱(IRRAS)监测了IFABP以及IFABP的无螺旋变体(IFABP - HL)与1,2 - 二肉豆蔻酰磷脂酸(DMPA)酸性单层膜的结合情况。蛋白质吸附到DMPA上呈现出一个两相动力学过程,包括一个初始的缓慢阶段,这是由于蛋白质与单层膜结合和/或直接界面吸附引起的,以及一个与含脂结构域形成平行的更快阶段。IFABP在两个阶段的变化都比IFABP - HL更快。当IFABP与1,2 - 二棕榈酰磷脂酰胆碱的两性离子单层膜相互作用时,第二阶段不存在,这揭示了静电作用在这个阶段的重要作用。含有任何一种蛋白质的DMPA单层膜的BAM图像显示形成了最终导致刚性膜的结构域。DMPA/IFABP - HL形成的结构域比野生型蛋白质形成的更慢且刚性更小。总体而言,IRRAS研究揭示了蛋白质诱导的脂质酰链构象有序化,IFABP诱导的有序化效应要强得多。这些物理测量结果因此表明蛋白质与DMPA单层膜之间的直接相互作用程度不同,其中IFABP/DMPA相互作用更强一些。这些数据为先前的动力学测量提供了分子结构依据,表明螺旋结构域对于基于碰撞的脂肪酸转运到磷脂膜的机制至关重要[科尔西科,B.,西斯托拉,D.P.,弗里登,C.和斯托奇,J.(1998年)《美国国家科学院院刊》95,12174 - 12178]。

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